Chinese Journal of Lasers, Volume. 50, Issue 6, 0604002(2023)
High-Precision Binocular Camera Calibration Based on Coding Stereoscopic Target
Fig. 1. Schematic of new coding stereoscopic target. (a) New coding stereoscopic target; (b) the first coding target plane (number range is 0-11); (c) the second coding target plane (number range is 26-37); (d) the third coding target plane (number range is 40-51); (e) the fourth coding target plane (number range is 13-24)
Fig. 2. Schematic of coding unit structure. (a) Coding unit construction diagram; (b) encoding symbol construction diagram; (c) numbering diagram of each coding unit in the first coding target plane
Fig. 6.
Comparison diagrams of average absolute errors between proposed method and Zhang
Fig. 7. Comparison diagrams of average absolute errors between only collecting partial coding stereoscopic target image and collecting complete coding stereoscopic target image. (a) Mean absolute reprojection error; (b) mean absolute standard-length error; (c) mean absolute coplanar error
Fig. 8.
Comparison diagram of standard measuring block measurement error by proposed method and Zhang
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Zhaohui Yang, Huabing Zhu, Yulong Yin, Pei Yang. High-Precision Binocular Camera Calibration Based on Coding Stereoscopic Target[J]. Chinese Journal of Lasers, 2023, 50(6): 0604002
Category: Measurement and metrology
Received: Jan. 24, 2022
Accepted: Jun. 9, 2022
Published Online: Feb. 28, 2023
The Author Email: Zhu Huabing (zhuhuabing@hfut.edu.cn)